The motion rotors, or motors, are used to model Euclidean motion in 3D conformal geometric algebra. In this chapter we present a technique for estimating the motor which best transforms one set of noisy geometric objects onto another. The technique reduces to an eigenrotator problem and has some advantages over matrix formulations. It allows motors to be estimated from a variety of geometric data such as points, spheres, circles, lines, planes, directions, and tangents; and the different types of geometric data are combined naturally in a single framework. Also, it excludes the possibility of a reflection unlike some matrix formulations. It returns the motor with the smallest translation and rotation angle when the optimal motor is not uniq...
In this tutorial we will give an overview of Geometric Algebra and its application to computer graph...
We focus on inverse kinematics applications in computer graphics and robotics based on Conformal Geo...
In computer graphics and robotics a lot of different mathematical systems like vector algebra, homog...
In this paper we present a novel method for nonlinear rigid body motion estimation from noisy data u...
In this paper, we consider several parameterizations of rigid transformations using motors in 3-D co...
Geometric algebra is an universal mathematical language which provides very comprehensive techniques...
Abstract: In this paper we will address the problem of recovering covariant transformations between ...
Conformal transformations are described by rotors in the conformal model of geometric algebra (CGA)....
This paper exposes a very geometrical yet directly computational way of working with conformal motio...
Early in the development of computer graphics it was realized that projective geometry was well suit...
Early in the development of computer graphics it was realized that projective geometry was well suit...
Suppose we only know of some elements in a geometric algebra how a versor has transformed them, can ...
Early in the development of Computer Graphics it was realized that projective geometry was well suit...
Geometric Algebra (GA) has found success in various areas of the physical sciences and engineering o...
In this paper the authors will apply a mathematical system, the Conformal Geometric Algebra (CGA), t...
In this tutorial we will give an overview of Geometric Algebra and its application to computer graph...
We focus on inverse kinematics applications in computer graphics and robotics based on Conformal Geo...
In computer graphics and robotics a lot of different mathematical systems like vector algebra, homog...
In this paper we present a novel method for nonlinear rigid body motion estimation from noisy data u...
In this paper, we consider several parameterizations of rigid transformations using motors in 3-D co...
Geometric algebra is an universal mathematical language which provides very comprehensive techniques...
Abstract: In this paper we will address the problem of recovering covariant transformations between ...
Conformal transformations are described by rotors in the conformal model of geometric algebra (CGA)....
This paper exposes a very geometrical yet directly computational way of working with conformal motio...
Early in the development of computer graphics it was realized that projective geometry was well suit...
Early in the development of computer graphics it was realized that projective geometry was well suit...
Suppose we only know of some elements in a geometric algebra how a versor has transformed them, can ...
Early in the development of Computer Graphics it was realized that projective geometry was well suit...
Geometric Algebra (GA) has found success in various areas of the physical sciences and engineering o...
In this paper the authors will apply a mathematical system, the Conformal Geometric Algebra (CGA), t...
In this tutorial we will give an overview of Geometric Algebra and its application to computer graph...
We focus on inverse kinematics applications in computer graphics and robotics based on Conformal Geo...
In computer graphics and robotics a lot of different mathematical systems like vector algebra, homog...